A tennis ball and a solid steel ball with the same diameter are dropped at the same time. Which ball has the greater force acting on it? a. The steel ball.

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Presentation transcript:

A tennis ball and a solid steel ball with the same diameter are dropped at the same time. Which ball has the greater force acting on it? a. The steel ball b. The tennis ball c. They both have the same force acting on them.

A tennis ball and a solid steel ball with the same diameter are dropped at the same time. Which ball has the greater force acting on it? a. The steel ball b. The tennis ball c. They both have the same force acting on them.

The reason a tennis ball and a solid steel ball will accelerate at the same rate, in the absence of air resistance, is that a. they have the same mass. b. the ball with the larger force has the smaller mass. c. the ball with the larger force also has the larger mass. d. the force acting on them is the same. e. none of the above

The reason a tennis ball and a solid steel ball will accelerate at the same rate, in the absence of air resistance, is that a. they have the same mass. b. the ball with the larger force has the smaller mass. c. the ball with the larger force also has the larger mass. d. the force acting on them is the same. e. none of the above

When an object reaches terminal velocity its acceleration is a. 0 m/s2. b. 4.9 m/s2. c. 9.8 m/s2.

When an object reaches terminal velocity its acceleration is a. 0 m/s2. b. 4.9 m/s2. c. 9.8 m/s2.

A heavy person and a light person parachute together and wear the same size parachutes. Assuming they open their parachutes at the same time, which person reaches the ground first? a. the light person b. the heavy person c. Neither -- they both reach the ground together.

A heavy person and a light person parachute together and wear the same size parachutes. Assuming they open their parachutes at the same time, which person reaches the ground first? a. the light person b. the heavy person c. Neither -- they both reach the ground together.

A tennis ball and a solid steel ball with the same diameter are dropped at the same time. In the absence of air resistance, which ball has the greater acceleration? a. The steel ball b. The tennis ball c. They both have the same acceleration.

A tennis ball and a solid steel ball with the same diameter are dropped at the same time. In the absence of air resistance, which ball has the greater acceleration? a. The steel ball b. The tennis ball c. They both have the same acceleration.

A 20-N falling object encounters 4 N of air resistance A 20-N falling object encounters 4 N of air resistance. The magnitude of the net force on the object is a. 0 N. b. 4 N. c. 16 N. d. 20 N. e. none of the above

A 20-N falling object encounters 4 N of air resistance A 20-N falling object encounters 4 N of air resistance. The magnitude of the net force on the object is a. 0 N. b. 4 N. c. 16 N. d. 20 N. e. none of the above

Accelerations are produced by a. forces. b. velocities. c. accelerations. d. masses. e. none of the above

Accelerations are produced by a. forces. b. velocities. c. accelerations. d. masses. e. none of the above

The acceleration produced by a net force on an object is a. inversely proportional to the mass of the object. b. directly proportional to the magnitude of the net force. c. in the same direction as the net force. d. all of the above e. none of the above

The acceleration produced by a net force on an object is a. inversely proportional to the mass of the object. b. directly proportional to the magnitude of the net force. c. in the same direction as the net force. d. all of the above e. none of the above

If shopping cart A has five times more mass in it than shopping cart B and the two carts are pushed with equal forces, you can expect the acceleration of shopping cart A to be a. 1/25 times that of shopping cart B. b. 1/5 times that of shopping cart B. c. 5 times that of shopping cart B. d. 25 times that of shopping cart B.

If shopping cart A has five times more mass in it than shopping cart B and the two carts are pushed with equal forces, you can expect the acceleration of shopping cart A to be a. 1/25 times that of shopping cart B. b. 1/5 times that of shopping cart B. c. 5 times that of shopping cart B. d. 25 times that of shopping cart B.

A girl pulls on a 10-kg wagon with a constant force of 20 N A girl pulls on a 10-kg wagon with a constant force of 20 N. What is the wagon's acceleration? a. 0.5 m/s2 b. 2 m/s2 c. 10 m/s2 d. 20 m/s2 e. 200 m/s2

A girl pulls on a 10-kg wagon with a constant force of 20 N A girl pulls on a 10-kg wagon with a constant force of 20 N. What is the wagon's acceleration? a. 0.5 m/s2 b. 2 m/s2 c. 10 m/s2 d. 20 m/s2 e. 200 m/s2

A force of 3 N accelerates a mass of 3 kg at the rate of 1 m/s2 A force of 3 N accelerates a mass of 3 kg at the rate of 1 m/s2. The acceleration of a mass of 6 kg acted upon by a force of 6 N is a. twice as much. b. half as much. c. the same. d. none of the above

A force of 3 N accelerates a mass of 3 kg at the rate of 1 m/s2 A force of 3 N accelerates a mass of 3 kg at the rate of 1 m/s2. The acceleration of a mass of 6 kg acted upon by a force of 6 N is a. twice as much. b. half as much. c. the same. d. none of the above

A push on a 1-kilogram brick accelerates the brick A push on a 1-kilogram brick accelerates the brick. Neglecting friction, to equally accelerate a 10-kilogram brick, one would have to push a. with 100 times as much force. b. with 10 times as much force. c. with just as much force. d. with 1/10 the amount of force. e. none of the above

A push on a 1-kilogram brick accelerates the brick A push on a 1-kilogram brick accelerates the brick. Neglecting friction, to equally accelerate a 10-kilogram brick, one would have to push a. with 100 times as much force. b. with 10 times as much force. c. with just as much force. d. with 1/10 the amount of force. e. none of the above

If the force acting on a cart doubles, what happens to the cart's acceleration? a. It quarters. b. It halves. c. It stays the same. d. It doubles. e. It quadruples.

If the force acting on a cart doubles, what happens to the cart's acceleration? a. It quarters. b. It halves. c. It stays the same. d. It doubles. e. It quadruples.

Suppose a cart is being moved by a force Suppose a cart is being moved by a force. If suddenly a load is dumped into the cart so that the cart's mass doubles, what happens to the cart's acceleration? a. It quarters. b. It halves. c. It stays the same. d. It doubles. e. It quadruples.

Suppose a cart is being moved by a force Suppose a cart is being moved by a force. If suddenly a load is dumped into the cart so that the cart's mass doubles, what happens to the cart's acceleration? a. It quarters. b. It halves. c. It stays the same. d. It doubles. e. It quadruples.

A car has a mass of 1500 kg and accelerates at 5 meters per second squared. What is the magnitude of the force acting on the car? a. 300 N. b. 1500 N. c. 2250 N. d. 7500 N. e. none of the above

A car has a mass of 1500 kg and accelerates at 5 meters per second squared. What is the magnitude of the force acting on the car? a. 300 N. b. 1500 N. c. 2250 N. d. 7500 N. e. none of the above

A tow truck exerts a force of 2000 N on a car, accelerating it at 1 m/s/s. What is the mass of the car? a. 667 kg b. 1000 kg c. 2000 kg d. 8000 kg e. none of the above

A tow truck exerts a force of 2000 N on a car, accelerating it at 1 m/s/s. What is the mass of the car? a. 667 kg b. 1000 kg c. 2000 kg d. 8000 kg e. none of the above

A jet has a mass of 40,000 kg. The thrust for each of four engines is 20,000 N. What is the jet's acceleration when taking off? a. 0.3 m/s2 b. 0.5 m/s2 c. 1 m/s2 d. 2 m/s2 e. none of the above

A jet has a mass of 40,000 kg. The thrust for each of four engines is 20,000 N. What is the jet's acceleration when taking off? a. 0.3 m/s2 b. 0.5 m/s2 c. 1 m/s2 d. 2 m/s2 e. none of the above

You pull horizontally on a 50-kg crate with a force of 450 N and the friction force on the crate is 250 N. The acceleration of the crate is a. 2 m/s2. b. 4 m/s2. c. 9 m/s2. d. 14 m/s2.

You pull horizontally on a 50-kg crate with a force of 450 N and the friction force on the crate is 250 N. The acceleration of the crate is a. 2 m/s2. b. 4 m/s2. c. 9 m/s2. d. 14 m/s2.

When a woman stands with two feet on a scale, the scale reads 280 N When a woman stands with two feet on a scale, the scale reads 280 N. When she lifts one foot, the scale reads a. less than 280 N. b. more than 280 N. c. 280 N.

When a woman stands with two feet on a scale, the scale reads 280 N When a woman stands with two feet on a scale, the scale reads 280 N. When she lifts one foot, the scale reads a. less than 280 N. b. more than 280 N. c. 280 N.

Which of the following would exert the most pressure on the ground? a. A woman standing in running shoes b. A woman standing on skis c. A woman standing in high-heel shoes

Which of the following would exert the most pressure on the ground? a. A woman standing in running shoes b. A woman standing on skis c. A woman standing in high-heel shoes

You are on a frozen pond, and the ice starts to crack You are on a frozen pond, and the ice starts to crack. If you lie down on the ice and begin to crawl, this will a. increase the pressure on the ice. b. decrease the pressure on the ice. c. increase the total force on the ice. d. decrease the total force on the ice.

You are on a frozen pond, and the ice starts to crack You are on a frozen pond, and the ice starts to crack. If you lie down on the ice and begin to crawl, this will a. increase the pressure on the ice. b. decrease the pressure on the ice. c. increase the total force on the ice. d. decrease the total force on the ice.

A certain unbalanced force gives a 20 kg object an acceleration of 2 A certain unbalanced force gives a 20 kg object an acceleration of 2.0 m/s^2. What acceleration would the same force give a 30 kg object?

The following essay question needs to be answered using complete sentences. Do not write one word answers. Explain! A. Drop a sheet of paper and a coin at the same time on your desk. Which reaches the surface first? Why? B. Now crumple the paper into a small, tight wad and again drop it with the coin. Explain the difference observed. C. Will the coin and the paper fall together if dropped from a 3rd or 4th story window? Explain your answer